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局部漆酶活性调节裸子植物压缩木材中木质素聚合物的分布。

Localised laccase activity modulates distribution of lignin polymers in gymnosperm compression wood.

机构信息

Graduate School of Agriculture, Kyoto University, Kitashirakawa-oiwakecho, Kyoto, 606-8502, Japan.

Research Institute for Sustainable Humanosphere, Kyoto University, Gokasho, Uji, 611-0011, Japan.

出版信息

New Phytol. 2021 Jun;230(6):2186-2199. doi: 10.1111/nph.17264. Epub 2021 Mar 18.

Abstract

The woody stems of coniferous gymnosperms produce specialised compression wood to adjust the stem growth orientation in response to gravitropic stimulation. During this process, tracheids develop a compression-wood-specific S L cell wall layer with lignins highly enriched with p-hydroxyphenyl (H)-type units derived from H-type monolignol, whereas lignins produced in the cell walls of normal wood tracheids are exclusively composed of guaiacyl (G)-type units from G-type monolignol with a trace amount of H-type units. We show that laccases, a class of lignin polymerisation enzymes, play a crucial role in the spatially organised polymerisation of H-type and G-type monolignols during compression wood formation in Japanese cypress (Chamaecyparis obtusa). We performed a series of chemical-probe-aided imaging analysis on C. obtusa compression wood cell walls, together with gene expression, protein localisation and enzymatic assays of C. obtusa laccases. Our data indicated that CoLac1 and CoLac3 with differential oxidation activities towards H-type and G-type monolignols were precisely localised to distinct cell wall layers in which H-type and G-type lignin units were preferentially produced during the development of compression wood tracheids. We propose that, not only the spatial localisation of laccases, but also their biochemical characteristics dictate the spatial patterning of lignin polymerisation in gymnosperm compression wood.

摘要

针叶树纲木本植物的木质茎产生特化的压缩木,以调整茎的生长方向,从而响应向重力性刺激。在这个过程中,导管形成具有压缩木特异性 S L 细胞壁层,木质素高度富含源自 H 型单体醇的对羟基苯基(H)型单元,而在正常木材导管细胞壁中产生的木质素仅由来自 G 型单体醇的愈创木基(G)型单元组成,仅有痕量的 H 型单元。我们表明,漆酶是一类木质素聚合酶,在日本扁柏(Chamaecyparis obtusa)的压缩木形成过程中,对 H 型和 G 型单体醇的空间组织聚合起着至关重要的作用。我们对 C. obtusa 压缩木细胞壁进行了一系列化学探针辅助成像分析,同时进行了 C. obtusa 漆酶的基因表达、蛋白定位和酶活性测定。我们的数据表明,CoLac1 和 CoLac3 对 H 型和 G 型单体醇具有不同的氧化活性,它们被精确地定位到不同的细胞壁层中,在压缩木导管的发育过程中,这些细胞壁层中优先产生 H 型和 G 型木质素单元。我们提出,不仅漆酶的空间定位,而且它们的生化特性决定了木质素在裸子植物压缩木中的空间聚合模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b87f/8252379/1b9d932de21b/NPH-230-2186-g001.jpg

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